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Recent Advances in Palladium Nanoparticles-Based Hydrogen Sensors for Leak Detection

机译:基于钯纳米粒子的氢传感器用于泄漏检测的最新进展

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摘要

Along with the development of hydrogen as a sustainable energy carrier, it is imperative to develop very rapid and sensitive hydrogen leaks sensors due to the highly explosive and flammable character of this gas. For this purpose, palladium-based materials are being widely investigated by research teams because of the high affinity between this metal and hydrogen. Furthermore, nanostructured palladium may provide improved sensing performances compared to the use of bulk palladium. This arises from a higher effective surface available for interaction of palladium with the hydrogen gas molecules. Several works taking advantage of palladium nanostructures properties for hydrogen sensing applications have been published. This paper reviews the recent advances reported in the literature in this scope. The electrical and optical detection techniques, most common ones, are investigated and less common techniques such as gasochromic and surface wave acoustic sensors are also addressed. Here, the sensor performances are mostly evaluated by considering their response time and limit of detection.
机译:随着氢气作为可持续能源载体的发展,由于这种气体的高度爆炸性和易燃性,必须开发出非常快速和灵敏的氢气泄漏传感器。为此,由于钯基材料与氢之间的亲和力高,因此研究小组正在对其进行广泛研究。此外,与使用本体钯相比,纳米结构的钯可以提供改善的感测性能。这归因于可用于钯与氢气分子相互作用的更高的有效表面。已经发表了一些利用钯纳米结构特性进行氢感测的工作。本文回顾了该领域文献报道的最新进展。研究了最常见的电学和光学检测技术,还讨论了不常见的技术,例如气致变色和表面波声学传感器。在此,主要通过考虑传感器的响应时间和检测极限来评估其性能。

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